会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明申请
    • LEAKAGE DETECTOR, LEAKAGE DETECTION METHOD, AND PIPE NETWORK MONITORING APPARATUS
    • 泄漏检测器,泄漏检测方法和管网监控装置
    • US20150247777A1
    • 2015-09-03
    • US14430413
    • 2013-09-20
    • SEKISUI CHEMICAL CO., LTD.
    • Hiroaki Kondou
    • G01M3/24
    • G01M3/243F17D5/06G01P13/0073
    • Provided is a leakage detector which is capable of exhibiting high sensitivity to vibration-sounds caused by water leakage from a synthetic resin pipe and thus setting an installation span longer to thereby make it possible to more efficiently perform a water leakage inspection for a synthetic resin pipe. The leakage detector (6) comprises a base (21), a piezoelectric element (9) supported by the base (21) and configured to convert vibration-sounds to an electric signal, and a weight member (28) loaded against the piezoelectric element (9). The piezoelectric element (9) is made of a polymeric piezoelectric material. One end of the piezoelectric element (9) is supported by an upper end of a support post (27), and the weight member (28) is loaded against the other end of the piezoelectric element (9).
    • 本发明提供一种泄漏检测装置,能够对来自合成树脂管的漏水引起的振动声响应灵敏度高,从而使安装间隔更长,能够更有效地进行合成树脂管的漏水检查 。 泄漏检测器(6)包括基座(21),由基座(21)支撑并构造成将振动声音转换为电信号的压电元件(9),以及装载在压电元件 (9)。 压电元件(9)由聚合物压电材料制成。 压电元件(9)的一端由支撑柱(27)的上端支撑,并且配重构件(28)被装载在压电元件(9)的另一端。
    • 23. 发明申请
    • HIGH REPETITION RATE THERMOMETRY SYSTEM AND METHOD
    • 高重复率热电偶系统和方法
    • US20150153243A1
    • 2015-06-04
    • US14552423
    • 2014-11-24
    • Osama Mohammad AL-SAYED WAHBA
    • Osama Mohammad AL-SAYED WAHBA
    • G01M3/00
    • G01M3/243F17D5/005F17D5/06G01M3/00G01M3/24
    • An intelligent utility monitoring method and system for monitoring a network of utility lines can include a data collector configured to receive acoustic data based on real-time measurements of the utility line, an events historian configured store the acoustic data, an alarm and events (A&E) manager, a server, and an interface. The A&E manager can be configured to store alarm and even data. The A&E data can be based on analysis of the acoustic data. The interface can be configured to provide output based on the acoustic data and on the A&E data. The server can be configured to store the acoustic data and the A&E data. The server can further be configured to provide a computer network for at least the events historian, the A&E manager, and the interface.
    • 用于监测公用事业线网络的智能公用事业监测方法和系统可以包括被配置为基于公用事业线的实时测量接收声学数据的数据收集器,配置的事件历史数据库存储声学数据,警报和事件(A&E )管理器,服务器和接口。 A&E经理可以配置为存储警报和数据。 A&E数据可以基于声学数据的分析。 该接口可以配置为基于声学数据和A&E数据提供输出。 可以将服务器配置为存储声学数据和A&E数据。 服务器还可以被配置为至少提供事件历史记录,A&E管理器和接口的计算机网络。
    • 24. 发明申请
    • INTEGRATED PIPELINE PROTECTION SYSTEM
    • 集成管道保护系统
    • US20150136265A1
    • 2015-05-21
    • US14546299
    • 2014-11-18
    • Mohammed Zulfiquar
    • Mohammed Zulfiquar
    • F17D5/06G01M3/00F17D5/00
    • F17D5/06F17D1/00F17D3/01F17D5/00F17D5/005G01M3/00
    • The pipeline protection system includes a plurality of modules and a central control unit. The modules are adapted to be disposed circumferentially around the pipeline and capable of communicating to each other and with the central control unit to generate a plurality of real time data related to the pipeline. The modules are retrofittable configuration that includes sub-modules. Each sub-module includes top and bottom protective casings, and at least one flexible composite layer disposed between the top and bottom protective casings. The flexible composite layer includes an electronic circuitry embedded thereon, and a plurality of sensors coupled to the electronic circuitry to monitor a plurality of parameters associated with the pipeline. The plurality of sensors is configured to generate various real time data, such as pipeline leakage, predict future leakage or failure, and detect any attempt to theft or tempering in the pipeline.
    • 管道保护系统包括多个模块和中央控制单元。 这些模块适于围绕管道周向设置并且能够彼此通信并与中央控制单元通信以产生与流水线相关的多个实时数据。 这些模块是包含子模块的可升级配置。 每个子模块包括顶部和底部保护套管,以及设置在顶部和底部保护套管之间的至少一个柔性复合材料层。 柔性复合层包括嵌入其中的电子电路,以及耦合到电子电路的多个传感器,以监测与管道相关联的多个参数。 多个传感器被配置为生成各种实时数据,例如管道泄漏,预测未来的泄漏或故障,并且检测管道中的任何盗窃或回火的尝试。
    • 26. 发明申请
    • WATER LEAKAGE DETECTION DEVICE
    • 水泄漏检测装置
    • US20150059887A1
    • 2015-03-05
    • US14340902
    • 2014-07-25
    • MINEBEA CO., LTD.
    • Shigemi MASUDAToshikazu KOSHIBA
    • G01M3/18
    • G01M3/18F17D5/06Y10T137/8158
    • There is provided a water leakage detection device including a water leakage detection unit which is configured to detect water leakage, a water leakage detection circuit unit which is configured to be driven by a DC voltage from a DC power source and apply an AC voltage for detecting water leakage to the water leakage detection unit, and is configured to determine whether water is leaking based on a detection signal of the water leakage detection unit. The water leakage detection unit includes an insulating transformer having a primary side and a secondary side, the second side being connected to the water leakage detection unit, and a water leakage detection determining unit which is connected to the primary side of the insulating transformer.
    • 本发明提供一种漏水检测装置,其具备:检测漏水的漏水检测单元;漏水检测电路单元,其被配置为由直流电源的直流电压驱动,并施加用于检测的交流电压 漏水到漏水检测单元,并且被配置为基于漏水检测单元的检测信号来确定水是否泄漏。 漏水检测单元包括具有初级侧和次级侧的绝缘变压器,第二侧连接到漏水检测单元,以及漏水检测确定单元,其连接到绝缘变压器的初级侧。
    • 28. 发明授权
    • Valve leakby diagnostics
    • 阀门泄漏诊断
    • US08887549B2
    • 2014-11-18
    • US12527660
    • 2007-02-19
    • Jay J. MendelsonChristopher A. MazzaScott AmsbaughGary Francis ConnerEdward T. Fisher
    • Jay J. MendelsonChristopher A. MazzaScott AmsbaughGary Francis ConnerEdward T. Fisher
    • G01F25/00G01F15/00F17D5/06
    • G01F15/005F17D5/06Y10T137/7759
    • A method is disclosed for determining leakby in a flow controller (100) comprising a flow sensor (102), a flow control valve (106) and electronics (104). The electronics are coupled to the flow sensor, the flow control valve and configured to adjust the flow control valve in response to the signal of the flow sensor indicating the flow rate of the material such that a set flow rate of material through the flow controller is maintained. The steps of the method comprise determining (302) a zero drift (Qdrift) value for the flow sensor (102). Determining (304) a flow rate (Qflow) through the flow controller (100) when the control valve (106) is in the fully closed position. And determining (306) the leakby through the flow controller (100) where the leakby is equal Qflow-Qdrift.
    • 公开了一种用于在包括流量传感器(102),流量控制阀(106)和电子设备(104)的流量控制器(100)中确定泄漏的方法。 电子设备耦合到流量传感器,流量控制阀并且被配置为响应于流量传感器的信号来调节流量控制阀,该信号指示材料的流量,使得通过流量控制器的材料的设定流速为 保持。 该方法的步骤包括确定(302)流量传感器(102)的零漂移(Qdrift)值。 当控制阀(106)处于完全关闭位置时,确定通过流量控制器(100)的流量(Q flow)(304)。 并且通过所述流量控制器(100)确定(306)所述泄漏,其中所述泄漏等于Qflow-Qdrift。
    • 30. 发明授权
    • Pipeline leakage-sensing device
    • 管道泄漏检测装置
    • US08640527B2
    • 2014-02-04
    • US12162989
    • 2007-02-02
    • Elmer H. Hara
    • Elmer H. Hara
    • G01M3/38
    • F17D5/06G01M3/047
    • A leakage-sensing device for installation adjacent to a pipeline configured for conveying liquid or gaseous chemical materials. The leakage-sensing device comprises a length of cable configured to transmit and back-reflect signals. The cable is communicable with a signal-measuring device. The entire length of cable is encompassed by a torsioned and tensioned coiled biasing means. The cable and the torsioned and tensioned coiled biasing means are embedded in a chemically frangible casing material. The chemically frangible material is selected for its structural instability when contacted with the selected chemical material to be conveyed within the pipeline thereby releasing the torsioned and tensioned biasing means which subsequently imparts bending and/or twisting and/or elongating and/or contracting forces to the cable thereby causing the cable to physically interfere with and/or deform and/or break the transmission and back-reflection of signals along the cable.
    • 一种泄漏检测装置,用于安装在配置用于输送液体或气体化学材料的管道附近。 泄漏感测装置包括被配置为传输和反射信号的电缆长度。 电缆可与信号测量设备通信。 电缆的整个长度由扭转和张紧的线圈偏置装置包围。 电缆和扭转和张紧的螺旋偏置装置嵌入化学脆性外壳材料中。 选择化学脆性材料的结构不稳定性,当与在管道内被输送的所选择的化学材料接触时,释放扭转和张紧的偏压装置,随后将弯曲和/或扭曲和/或伸长和/或收缩力施加到 电缆,从而导致电缆物理地干扰和/或变形和/或破坏沿着电缆的信号的传输和反向反射。